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* Many example yaml tidy-ups * Update components/sensor/hlw8012.rst --------- Co-authored-by: Keith Burzinski <kbx81x@gmail.com>
219 lines
8.6 KiB
ReStructuredText
219 lines
8.6 KiB
ReStructuredText
Template Alarm Control Panel
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============================
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.. seo::
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:description: Instructions for setting up template Alarm Control Panels in ESPHome.
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:image: description.svg
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The ``template`` alarm control panel platform allows you to turn your binary sensors into a state machine
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managed alarm control panel.
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.. code-block:: yaml
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# Example configuration entry
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alarm_control_panel:
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- platform: template
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name: Alarm Panel
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codes:
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- "1234"
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binary_sensors:
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- input: zone_1
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- input: zone_2
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bypass_armed_home: true
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Configuration variables:
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------------------------
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- **codes** (*Optional*, list of string): A list of codes for disarming the alarm, if *requires_code_to_arm* set to true then for arming the alarm too.
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- **requires_code_to_arm** (*Optional*, boolean): Code required for arming the alarm, *codes* must be provided.
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- **arming_away_time** (*Optional*, :ref:`config-time`): The exit delay before the alarm is armed to away mode. Defaults to ``0s``.
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- **arming_home_time** (*Optional*, :ref:`config-time`): The exit delay before the alarm is armed to home mode.
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- **arming_night_time** (*Optional*, :ref:`config-time`): The exit delay before the alarm is armed to night mode.
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- **pending_time** (*Optional*, :ref:`config-time`): The entry delay before the alarm is triggered. Defaults to ``0s``.
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- **trigger_time** (*Optional*, :ref:`config-time`): The time after a triggered alarm before resetting to previous state if the sensors are cleared/off. Defaults to ``0s``.
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- **binary_sensors** (*Optional*, *list*): A list of binary sensors the panel should use. Each consists of:
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- **input** (**Required**, string): The id of the binary sensor component
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- **bypass_armed_home** (*Optional*, boolean): This binary sensor will not trigger the alarm when in ``armed_home`` state.
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- **bypass_armed_night** (*Optional*, boolean): This binary sensor will not trigger the alarm when in ``armed_night`` state.
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- **trigger_mode** (*Optional*, string): Sets the trigger mode for this sensor. One of ``delayed``, ``instant``, or ``delayed_follower``. (``delayed`` is the default if not specified)
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- **chime** (*Optional*, boolean): When set ``true``, the chime callback will be called whenever the sensor goes from closed to open. (``false`` is the default if not specified)
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- **restore_mode** (*Optional*, enum):
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- ``ALWAYS_DISARMED`` (Default): Always start in ``disarmed`` state.
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- ``RESTORE_DEFAULT_DISARMED``: Restore state or default to ``disarmed`` state if no saved state was found.
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- All other options from :ref:`Alarm Control Panel <config-alarm_control_panel>`
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.. note::
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If ``binary_sensors`` is omitted then you're expected to trigger the alarm using
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:ref:`alarm_control_panel_pending_action` or :ref:`alarm_control_panel_triggered_action`.
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.. _template_alarm_control_panel-trigger_modes:
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Trigger Modes
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-------------
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Each binary sensor "zone" supports 3 trigger modes. The 3 trigger modes are:
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- delayed
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- instant
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- delayed_follower
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The ``delayed`` trigger mode is typically specified for exterior doors where entry is required to access an alarm keypad or other arm/disarm method. If the alarm panel is armed, and a zone set to ``delayed`` is "faulted" (i.e. the zone state is ``true``) the alarm state will change from the ``armed`` state to the ``pending`` state. During the ``pending`` state, the user has a preset time to disarm the alarm before it changes to the ``triggered`` state. This is the default trigger mode if not specified.
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The ``instant`` trigger mode is typically used for exterior zones (e.g. windows, and glass break detectors). If the alarm control panel is armed, a fault on this type of zone will cause the alarm to go from the ``armed`` state directly to the ``triggered`` state.
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The ``delayed_follower`` trigger mode is typically specifed for interior passive infared (PIR) or microwave sensors. One of two things happen when a ``delayed_follower`` zone is faulted:
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1. When the alarm panel is in the armed state, a fault on a zone with ``delayed_follower`` specified will cause the alarm control panel to go directly to the ``triggered`` state.
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2. When the alarm panel is in the pending state, a fault on a zone with ``delayed_follower`` specified will remain in the ``pending`` state.
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The ``delayed_follower`` trigger mode offers better protection if someone enters a premises via an unprotected window or door. If there is a PIR guarding the main hallway, it will cause an instant trigger of the alarm panel as someone
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entered the premises in a unusual manner. Likewise, if someone enters the premises though a door set to the ``delayed`` trigger mode, and then triggers the PIR, the alarm will stay in the ``pending`` state until either they disarm the alarm, or
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the pending timer expires.
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.. _template_alarm_control_panel-state_flow:
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State Flow:
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-----------
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1. The alarm starts in ``DISARMED`` state
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2. When the ``arm_...`` method is invoked
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a. ``arming_..._time`` is greater than 0 the state is ``ARMING``
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b. ``arming_..._time`` is 0 or after the delay the state is ``ARMED_...``
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3. When the alarm is tripped by a sensor state changing to ``on`` or ``alarm_control_panel_pending_action`` invoked
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1. If trigger_mode is set to ``delayed``:
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1. ``pending_time`` greater than 0 the state is ``PENDING``
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2. ``pending_time`` is 0 or after the ``pending_time`` delay the state is ``TRIGGERED``
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2. If trigger_mode is set to ``instant``:
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1. The state is set to ``TRIGGERED``
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3. If the trigger_mode is set to ``interior_follower``:
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1. If the current state is ``ARMED_...`` the state will be set to ``TRIGGERED``
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2. If the current state is ``PENDING`` then nothing will happen and it will stay in the ``PENDING`` state.
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4. If ``trigger_time`` greater than 0 and no sensors are ``on`` after ``trigger_time`` delay
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the state returns to ``ARM_...``
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.. note::
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Although the interface supports all arming modes only ``away``, ``home`` and ``night`` have been implemented for now.
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``arm_...`` is for either ``arm_away`` or ``arm_home``
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``arming_..._time`` is for either ``arming_away_time``, ``arming_home_time``, or ``arming_night_time``
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``ARMED_...`` is for either ``ARMED_AWAY``, ``ARMED_HOME``, or ``ARMED_NIGHT``
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Example:
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--------
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.. code-block:: yaml
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alarm_control_panel:
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platform: template
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name: Alarm Panel
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id: acp1
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codes:
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- "1234"
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requires_code_to_arm: true
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arming_away_time: 30s
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arming_home_time: 5s
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pending_time: 30s
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trigger_time: 5min
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binary_sensors:
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- input: zone_1
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chime: true
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trigger_mode: delayed
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- input: zone_2
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chime: true
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trigger_mode: delayed
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- input: zone_3
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bypass_armed_home: true
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trigger_mode: delayed_follower
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- input: zone_4
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trigger_mode: instant
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- input: ha_test
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on_state:
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then:
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- lambda: !lambda |-
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ESP_LOGD("TEST", "State change %s", alarm_control_panel_state_to_string(id(acp1)->get_state()));
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on_triggered:
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then:
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- switch.turn_on: siren
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on_cleared:
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then:
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- switch.turn_off: siren
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on_ready:
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then:
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- lambda: !lambda |-
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ESP_LOGD("TEST", "Sensor ready change to: %s",
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(id(acp1).get_all_sensors_ready())) ? (const char *) "True" : (const char *) "False");
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on_chime:
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then:
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- lambda: !lambda |-
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ESP_LOGD("TEST", "Zone with chime mode set opened");
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binary_sensor:
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- platform: gpio
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id: zone_1
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name: Zone 1
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device_class: door
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pin:
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number: GPIOXX
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mode: INPUT_PULLUP
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inverted: True
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- platform: gpio
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id: zone_2
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name: Zone 2
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device_class: door
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pin:
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number: GPIOXX
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mode: INPUT_PULLUP
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inverted: True
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- platform: gpio
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id: zone_3
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name: Zone 3
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device_class: motion
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pin:
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number: GPIOXX
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mode: INPUT_PULLUP
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inverted: True
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- platform: gpio
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id: zone_4
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name: Zone 4
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device_class: door
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pin:
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number: GPIOXX
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mode: INPUT_PULLUP
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inverted: True
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- platform: homeassistant
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id: ha_test
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name: HA Test
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entity_id: input_boolean.test_switch
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switch:
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- platform: gpio
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id: siren
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name: Siren
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icon: mdi:alarm-bell
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pin: GPIOXX
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See Also
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--------
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- :doc:`index`
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- :doc:`/components/binary_sensor/index`
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- :apiref:`template/alarm_control_panel/template_alarm_control_panel.h`
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- :ghedit:`Edit`
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